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首页> 外文期刊>Journal of Chemistry >Valorization of Date Pits as an Effective Biosorbent for Remazol Brilliant Blue Adsorption from Aqueous Solution
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Valorization of Date Pits as an Effective Biosorbent for Remazol Brilliant Blue Adsorption from Aqueous Solution

机译:日期凹坑的估值作为雷达尔辉煌蓝色吸附水溶液的有效生物吸附剂

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In this work, the adsorption of Remazol Brilliant Blue (RBB) over raw date pits (RDPs) as an inexpensive adsorbent has been examined. In addition, all parameters such as the adsorbent mass, solution pH, RDP particle size, RBB initial concentration, and temperature on the adsorption of RBB influencing the adsorption procedure were studied to provide fundamental information of the adsorption equilibrium. The characterization of RDP material is investigated by X-ray diffraction (XRD), scanning electron microscopy (SEM), and Fourier-transform infrared spectroscopy (FTIR). Based on the calculation, the kinetic rate of the adsorption was well modeled by pseudo-second-order and Langmuir isotherm. Surface functional groups of RDP have substantially been influenced by the adsorption characteristics of RBB. The capacity of the adsorption has achieved 105?mg/g and a removal efficiency of 90.4% at 1.5?g/L RDP mass, 40?mg/L initial dye concentration, pH 2, temperature of 328?K, 40?μm particle size, and contact time of 50?min. The capacity of the adsorption could reach 198?mg/g by increasing the ionic strength of RBB solution. Desorption tests showed that RDP adsorbent has the disadvantage of losing efficiency while reusing for many cycles. However, it still abundant and inexpensive. Therefore, RDP can be used as a potential low-cost bioabsorbent for the elimination of RBB from wastewater.
机译:在这项工作中,已经研究了Remazol辉煌蓝(RBB)的吸附作为廉价吸附剂的原始日期凹坑(RDPS)。此外,研究了所有参数,如吸附物质,溶液pH,RDP粒度,RBB初始浓度和对影响吸附过程的吸附的吸附,以提供吸附平衡的基本信息。通过X射线衍射(XRD),扫描电子显微镜(SEM)和傅立叶变换红外光谱(FTIR)来研究RDP材料的表征。基于计算,吸附的动力学率是由伪二阶和朗米尔等温线建模的。 RDP的表面官能团基本上受到RBB的吸附特性的影响。吸附的容量已经实现了105×mg / g,除去效率为90.4%,40.4%,40℃/ l初始染料浓度,pH 2,温度为328·k,40μm颗粒大小,并接触时间为50?分钟。通过增加RBB溶液的离子强度,吸附的容量可以达到198×mg / g。解吸试验表明,RDP吸附剂具有减少效率的缺点,同时重用许多循环。然而,它仍然丰富而廉价。因此,RDP可用作消除废水中的RBB的潜在低成本的生物吸收性。

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